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Studies on Catalyst Deactivation Rate and Byproducts Yield during Conversion of Methanol to Olefins

机译:甲醇制烯烃过程中催化剂失活速率及副产物收率的研究

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摘要

The conversion of methanol to olefins (MTO) over the SAPO-34 catalyst in fixed-bed microreactor was studied. The effect of reaction temperatures for methanol conversion to olefins and byproducts was investigated. A temperature of 425℃ appeared to be the optimum one suitable for conversion of methanol to olefins. Since the presence of water could increase the olefins selectivity, the methanol conversion reactions with mixed water/methanol feed were also studied. The effect of weight hourly space velocity on conversion of methanol was also studied. The results indicated that the olefins selectivity was significantly increased as WHSV increased till approximately 7.69 h~(-1) then it began to level off. Different factors affecting the catalyst deactivation rate was studied, showing that the catalyst deactivation time was dependent on reaction conditions, and temperatures higher and lower than the optimal one made the catalyst deactivation faster. Adding water to methanol could slow down the catalyst deactivation rate.
机译:研究了固定床微反应器中甲醇在SAPO-34催化剂上的转化为烯烃(MTO)。研究了反应温度对甲醇转化为烯烃和副产物的影响。 425℃的温度似乎是最适合将甲醇转化为烯烃的温度。由于水的存在可以增加烯烃的选择性,所以还研究了混合水/甲醇进料的甲醇转化反应。还研究了重时空速对甲醇转化率的影响。结果表明,随着WHSV的增加直到大约7.69 h〜(-1),烯烃的选择性显着增加,然后开始趋于稳定。研究了影响催化剂失活速率的不同因素,表明催化剂失活时间取决于反应条件,温度高于和低于最佳温度使催化剂失活更快。在甲醇中加水可能会减慢催化剂的失活速率。

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